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VINYL PLASTICS
Their Dermatological and Chemical Aspects
GEORGE E. | MORRIS. M.D. BOSTON
DURING the past 12 years there has been a fivefold increase in the number of dermatoses caused by the chemicals used in the manufacture of plastics.*1 New I plastics are being developed each year, and it is necessary that the industrial phy sician and dermatologist know the fundamentals of the chemistry of the different plastics, so that he will he able to judge correctly any case that comes to him for judgment concerning causal relationship with the work. j The patient knows little about his job except that he uses "raw stock" or "over j lay" decorative, that he "spreads vinyl onto cloth" or that he "dips a plastic pencil i into a solvent known as MKK." The examining physician should know what the , chemical of the "raw stock" can be. He should know something about the chemistry of the vinyls and should have a speaking acquaintance with such things as MEK (methylethyl ketone), TCP (tricresyl phosphate), DOP (dioctyl phosphate), etc. j
Plastics, in general, may he divided into five groups or classes:
|
(
j 1. Condensation 2. Vinyl (or polymerization) 3. Cellulose 4. Synthetic rubbers 5. Miscellaneous
Polymerization resins may be divided into six groups :
1. Polyvinyl resins 2. Polyacrylate resins 3. Polyvinylidene resins 4. Polyethylene resins i 5. Polystyrene resins ; 0. Coumarone and indene resins
* Polymerization is the chemical union of two or more molecules of a substance to
j form a new compound without the elimination of a secondary compound. A monomer
f is a substance consisting of a single part; a dimer is a substance consisting of two *i parts, etc.
In. Morris is Assistant Clinical Professor of Dermatology, Tufts College Medical School. | 1. Morris, G. hi.: Condensation Plastics: Their Dermatological and Chemical Aspects,
^"a. M. A. Arch. Ind. Hyg. 5:37-43 (Jan.) 1952.
535
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536 INDUSTRIAL HYGIENE AND OCCUPATIONAL MEDICINE
The polymerization resins are almost always compounded with other ingredients to produce the finished plastics. Compounding ingredients include plasticizers, stabi lizers, pigments and dyes, lubricants, and fillers.
POLYVINYL RESINS2
Vinyl resins contain the vinyl linkage, -- CH2 = CHX. X must be a strongly negative group--chloride, acetate, butyrate, alcohol, or acetal.
Vinyl chloride monomer
CH s CH Acetylene
+ HC1-------;------------------------- CH,= CHC1
Hydrochloric acid
Vinyl chloride
CH, = CHC1 +
Copolymers
Heat
Pressure----*-- CH, -- CH --
Catalyst
|
Cl
CH, --CH --
'I
Cl
-CH,-- CH-
I
Cl
Vinyl chloride polymer
Polyacrylai derivatives:
CH,= i CH, = i
CHj= ' CH, = > Methyl Acryla
CH, CN-- CH Ethylene c;
The polyn
The trade coatings, lead
Only a fe\
Monou
Polymeriz
It is often vinyl chloric!'
Dermatitis in a coater of vinyl plastics.
The more vinyl acetate that is used, the more soluble is the product and so the more useful for coatings (see "Flow Chart''). The trade names include Vinylite, (jeon, Koroseal, Satlex, Marvinol, etc. They are used as moulding compounds, adhe sives, fabrics, cable coverings, floor tile, belts, raincoats, toys, etc.
I have not seen any eruption from the finished product, but the Figure shows an eruption from vinyl latex used for coating artificial leather.
2. Siireve, R. X.: Chemical Process Industries, New York, McGraw-Hill Book Company, Inc., 1945.
The trade na covers, pipe,
Cracked pi
o
CD The trade na of blown bot
O cable insula!
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MORRIS-VINYL PLASTICS
537
polyacrylate resins
Polyacrylate resins are formed from the polymerization of acrylic acid and its derivatives:
CH, = CHCOOH CI1,= CHCOOCH, CH,= C(CH;,)COOH CH,:=C(CH,)COOCH,
Acrylic acid Methyl acrylate Methacrylic acid
Methyl methacrylate
Methyl Acrylate Polymerization
Cracking Petroleum------ process
-> CH, = CH, Ethylene
H,0 CHi = CH, --------------------
Cl
CHiCL CH,OH + NaCN - Ethylene chlorohydrin
catalyst
CH, CN-- CH,OH + CHaOH--------------------------------- CH,CHOCOCH,
Ethylene cyanohydrin Methanol
The jtolymer is
--CH, --CH--[CH,--CH],, -- CH, --CH
/
0 = C --OCH,
!I
O --C --OCH, 0 --C--OCH,
The trade names are Plexiglas and Lucite. They are used as dentures, adhesives,
coatings, leather finishes, optical novelties, etc.
Only a lew cases of stomatitis have been seen from acrylic dental plates.
POLYVINYLIDENE RESINS
Monomer--vinylidene chloride C1L* = C Cl2
Polymerizes
Cl Cl
--CH,--C -- CH, -- C --
i Cl
CH,
Cl I CI Cl
It is often copolymerized with vinyl chloride (10% vinylidene chloride and 90% vinyl chloride).
H Cl H Cl H Cl H Cl H Cl
-
I1
CI1
--
1I CI1
--
/| C
-
JI c1(
-
|
c
1
-
If c11
--
)1 c 11
-
11 c11
i1
-
1
c 1
-
11 c
11
--
. H H H Cl H Cl H Cl H H .
The trade name is Saran. It is used in the manufacture of upholstery fabrics, seat
covers, pipe, tubes, battery cases, belts, suspenders, etc.
POLYETII YLENE RI'.S! NS
Cracked petroleum
Heat
CH,= CH,----------------------
Ethylene
Pressure
HHHH
II I i --C--C--c--c--
II ! 1
HHH H J
Polyethylene
The trade names are Polythene and DYNF Resin. The resins are used in the form
of blown bottles, tubing, tape, sheeting, film, and for packaging, tableware, wire and
cable insulation, molded closures, etc.
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538 INDUSTRIAL HYGIENE AND OCCUPATIONAL MEDICINE
Occasional sensitization to these resins occurs, especially in workers coating the resins before complete polymerization has occurred.
Styrene
POLYSTYRENE RESINS >-CH = CH,
* CH, -CH;->rj^^S|-CH;CH,
EihyWn*
r CHCHj + H2
Polymerizes as follows:
-CH2-
CJH-CHj-CH-CHj-CH--
'J'he trade names are Lustron, Lustrex, Polystyrene, Styramic and Plexene. They are used as bottles, jars, closures, tableware, toilet articles, wall tile, brushes, etc.
COUMARONE AND INDENE RESINS
These are coal tar derivatives.
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The polymerization is similar to that of styrene. The trade names are Cumar, Nevillac, and Nypene. These are used for coatings, varnishes, printing inks, tile, rubber compounding, and chewing gum.
The compounds added to the resins include plasticizers, stabilizers, lubricants, colorants and fillers.
Plasticizers are chemicals which render the finished product more plastic. They make.up 10% to 50% of the weight of the finished product. They include the follow ing: phosphates (tricresyl phosphate--TCP); phthalates < dioctyl phthalate-- DOP) ; ricinoleic acid derivatives; sebacic acid derivatives; azelates; polyesters; nitrile rubbers; petroleum derivatives ; chlorinated aromatic hydrocarbons.
Stabilizers arc substances which prevent decomposition from heat and sunlight. They make up 2 to 5% by weight. They include lead compounds (basic white lead carbonate and basic white lead silicate) ; tin compounds, epoxides, phosphates, and metallic soaps.
Lubricants are added to plastics and make for ease of flow (internal and exter nal). They include fatty acids, waxes, oils, and metallic soaps. The colors used include dyes and pigments.
Fillers are added to confer chemical resistance, mechanical strength, electrical properties, and thermal resistance. The mineral fillers are commonly used and include clays, mica, asbestos, limestone, and diatomaceous earth.
BFG03661
Vinyl r
A and
H nia\ D mat
CH, -- Cl
CH.--C--(< CH. CO CH. CC
The pi for shipnn tization d<
o
X
3 2
inf' the
1'hey i'k, etc.
Mevil> nbber ncants,
They
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MORRIS--1'INYL PLASTICS
539
SUMMARY
Vinyl resins are formed by the polymerization of
RH
II
A--C=C--D
BH r
-C-C--
II
AD
BH
I!
c--c
1I
AD
AH
II
-C-C--
II
BD
A and B are preferably hydrogen, occasionally FI or Cl. H may be hydrogen, Cl, F, CM, or CH:i. D mav he hydrogen or COOH, Cl, F, CM, COOR, CnH5, -- O--R, -- CH;{.
CH, -- CH
CH,--C--(CH,)
CH, Clb
CCX CC1
H C.H. Cl OR O COCH, F COOH CN COOH COOCH, CN Cl CN
Ethylene Styrene Vinyl chloride Vinyl ether Vinyl acetate Vinyl fluoride Acrylic acid Acrylonitrile Methacrylic acid Methyl methacrylate Vjnylidene cyanide Vinylidene chloride Chloroacrylonitrile
The polymerization resins are handled by enclosed processes until they are ready for shipment. Workers handling the partially polymerized resins may develop sensi tization dermatitis. Eruptions caused by the finished products are rare but do occur.
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